Shew Chwen-Yang, Higuchi Yuji, Yoshikawa Kenichi
Department of Chemistry, College of Staten Island and Graduate Center, City University of New York, 2800 Victory Boulevard, Staten Island, New York 10314, USA.
J Chem Phys. 2007 Aug 28;127(8):085103. doi: 10.1063/1.2759925.
The conformational behavior of a giant DNA mediated by condensing agents in the bulk solution has been investigated through experimental and theoretical approaches. Experimentally, a pronounced conformational hysteresis is observed for folding and unfolding processes, by increasing and decreasing the concentration of condensing agent (polyethylene glycol) (PEG), respectively. To elucidate the observed hysteresis, a semiflexible chain model is studied by using Monte Carlo simulations for the coil-globule transition. In the simulations, the hysteresis loop emerges for stiff enough chains, indicating distinct pathways for folding and unfolding processes. Also, our results show that globular state is thermodynamically more stable than coiled state in the hysteresis loop. Our findings suggest that increasing chain stiffness may reduce the chain conformations relevant to the folding pathway, which impedes the folding process.
通过实验和理论方法研究了凝聚剂介导的巨型DNA在本体溶液中的构象行为。在实验中,通过分别增加和降低凝聚剂(聚乙二醇)(PEG)的浓度,观察到折叠和展开过程中明显的构象滞后现象。为了阐明观察到的滞后现象,通过使用蒙特卡罗模拟研究了卷曲-球状转变的半柔性链模型。在模拟中,对于足够刚性的链出现了滞后环,表明折叠和展开过程有不同的途径。此外,我们的结果表明,在滞后环中球状状态在热力学上比卷曲状态更稳定。我们的研究结果表明,增加链的刚性可能会减少与折叠途径相关的链构象,从而阻碍折叠过程。